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Combined multiple transcriptional repression mechanisms generate ultrasensitivity and oscillations

Eui Min Jeong, Yun Min Song, View ORCID ProfileJae Kyoung Kim
doi: https://doi.org/10.1101/2022.01.19.476033
Eui Min Jeong
1Department of Mathematical Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea
2Biomedical Mathematics Group, Institute for Basic Science, Daejeon 34126, Republic of Korea
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Yun Min Song
1Department of Mathematical Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea
2Biomedical Mathematics Group, Institute for Basic Science, Daejeon 34126, Republic of Korea
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Jae Kyoung Kim
1Department of Mathematical Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea
2Biomedical Mathematics Group, Institute for Basic Science, Daejeon 34126, Republic of Korea
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  • ORCID record for Jae Kyoung Kim
  • For correspondence: jaekkim@kaist.ac.kr
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Abstract

Transcriptional repression can occur via various mechanisms, such as blocking, sequestration, and displacement. For instance, the repressors can hold the activators to prevent binding with DNA or can bind to the DNA-bound activators to block their transcriptional activity. Although the transcription can be completely suppressed with a single mechanism, multiple repression mechanisms are utilized together to inhibit transcriptional activators in many systems, such as circadian clocks and NF-κB oscillators. This raises the question of what advantages arise if seemingly redundant repression mechanisms are combined. Here, by deriving equations describing the multiple repression mechanisms, we find that their combination can synergistically generate a sharply ultrasensitive transcription response and thus strong oscillations. This rationalizes why the multiple repression mechanisms are used together in various biological oscillators. The critical role of such combined transcriptional repression for strong oscillations is further supported by our analysis of formerly identified mutations disrupting the transcriptional repression of the mammalian circadian clock. The hitherto unrecognized source of the ultrasensitivity, the combined transcriptional repressions, can lead to robust synthetic oscillators with a previously unachievable simple design.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted January 22, 2022.
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Combined multiple transcriptional repression mechanisms generate ultrasensitivity and oscillations
Eui Min Jeong, Yun Min Song, Jae Kyoung Kim
bioRxiv 2022.01.19.476033; doi: https://doi.org/10.1101/2022.01.19.476033
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Combined multiple transcriptional repression mechanisms generate ultrasensitivity and oscillations
Eui Min Jeong, Yun Min Song, Jae Kyoung Kim
bioRxiv 2022.01.19.476033; doi: https://doi.org/10.1101/2022.01.19.476033

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